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portada Inorganic Membranes Synthesis, Characteristics and Applications: Synthesis, Characteristics, and Applications
Type
Physical Book
Author
Publisher
Language
English
Pages
336
Format
Paperback
Dimensions
22.9 x 15.2 x 1.8 cm
Weight
0.45 kg.
ISBN13
9789401165495

Inorganic Membranes Synthesis, Characteristics and Applications: Synthesis, Characteristics, and Applications

R. Bhave (Author) · Springer · Paperback

Inorganic Membranes Synthesis, Characteristics and Applications: Synthesis, Characteristics, and Applications - Bhave, R.

New Book

£ 60.63

  • Condition: New
Origin: U.S.A. (Import costs included in the price)
It will be shipped from our warehouse between Tuesday, July 23 and Thursday, August 08.
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Synopsis "Inorganic Membranes Synthesis, Characteristics and Applications: Synthesis, Characteristics, and Applications"

Here is the first book devoted completely to inorganic membrane separations and applications. It provides detailed information on all aspects of the development and utilization of both commercial and developmental inorganic membranes and membrane-based processes, pointing out their key advantages and limitations as separation tools. Characteristics, technological advances, and future applications of inorganic membranes are discussed in depth. An overview of the origins of these membranes provides a basis for understanding emerging technologies in the field. Coverage of thermal, chemical, surface, and mechanical properties of inorganic membranes includes discussion of pore diameter, thickness, and membrane morphology. You'll gain valuable insights into membrane modification, as well as the design and operation of membrane filtration units. Also included are sections on how to analyze mechanisms that affect flux feature models for prediction of micro- and ultrafiltration flux that help you minimize flux decline. Descriptions of cross-flow membrane filtration and common operating configurations clarify the influence of important operating parameters on system performance. Parameters influencing solute retention properties during ultrafiltration are identified and discussed or treated in detail.

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